• Title/Summary/Keyword: admixture content

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고영양수액요법에 빈용되는 아미노산수액제와 포도당액의 혼합시 안정성에 관한 연구 (The Stability of TPN Admixture of Amino acids Solution and Dextrose Solution)

  • 송미경;서옥경;이숙향;이승우;신현택
    • 한국임상약학회지
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    • 제8권2호
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    • pp.147-158
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    • 1998
  • The purpose of this study was to test the stability of TPN basic solutions containing amino acids and dextrose. Test solutions containing $4.25\%$ amino acids in $25\%$ dextrose (central TPN basic solution) or $4.25\%$ amino acids in $10\%$ dextrose (peripheral TPN basic solution) were prepared. Two different amino acids solutions $(Fravasol^{(R)}\;vs\;Freamine^{(R)})$ were tested. The samples were taken from each admixture and stored in the evacuated, sterile containers at $2{\sim}8^{\circ}C$ and ambient room temperature. Each sample was analyzed at 0, 3, 7, 14 and 30 days of storage. Each amino acid was analyzed by amino acid analyzer. Dextrose content was measured by polarimeter. The pH and chromagen formation were also monitored. The decomposition was measured by the changes in concentration of amino acids and dextroser TPN basic $solution-Freamine^{(R)}$ admixture stored at $2\sim8^{\circ}C$ were stable for 30 days. Central and peripheral TPN basic solutions stored at room temperature were stable for 7 days and 14 days, respectively. There were no changes in color for 30 days by naked eye. Amino acid concentrations in TPN basic $solution-Fravasol^{(R)}$ admixture stored at $2\sim8^{\circ}C$ or room temperature were stable for 30 days. But, significant color change was detected according to passing time. In conclusion, Peripheral TPN basic $solution-Fravasol^{(R)}$ admixture stored at room temperature and in refrigerator were stable for 3 days and 7 days, respectively. However, central TPN basic solution-Fravasol admixtures were unstable. Therefore, it is recommended that it should be admixed right before use.

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Cellulose계 수중재료분리 방지제의 제조 및 첨가에 따른 수중콘크리트의 경화특성 (The Hardening Characteristics of Underwater Concrete According to the Cellulose Underwater Non-segregation Admixture and Its Preparation)

  • 신동길;송연호;이철태
    • 공업화학
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    • 제16권2호
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    • pp.267-274
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    • 2005
  • 기존 콘크리트 압축강도의 80% 이상의 압축강도를 갖는 수중 콘크리트의 제작 및 시공을 위하여 셀룰로즈계 수중 재료분리 방지제의 제조 조건을 조사하고 이 재료 분리 방지제의 첨가에 따른 수중콘크리트의 경화 특성을 조사하였다. 제안된 수중재료분리 방지제는 시멘트량을 기준으로 methyl cellulose 0.4 wt%, silcon계 소포제 20 wt%, 응결제로서 sodium aluminate 0.1 wt%로 구성되었다. 수중 재료분리 방지제의 첨가량에 따라 현탁물질량은 감소하고, 공기량은 증가하나 시간 경과에 따른 유동성 손질은 크게 변하지 않아 작업성이 좋은 것으로 나타났다. 최적의 수중 재료분리 방지제 첨가량은 시멘트량의 0.8 wt%가 적절한 것으로 나타났으며, 이 조건에서 수중 제작한 공시체의 압축강도는 $325kg/cm^3$으로 공기중 제작한 공시체에 대한 수중공시체의 압축강도 비는 0.94로 얻어졌다.

압축강도와 팽창재 대체에 따른 폴리에틸렌 합성섬유로 보강된 변형 경화형 시멘트 복합체의 역학적 특성 (Influence of Cement Matrix's Compressive Strength and Replacement of Expansive Admixture on the Mechanical Properties of Synthetic Polyethylene (PE) Fiber-Reinforced Strain-Hardening Cement-Based Composites (SHCCs))

  • 송영재;윤현도;민병성;육향 혜철
    • 한국구조물진단유지관리공학회 논문집
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    • 제16권2호
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    • pp.95-103
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    • 2012
  • 변형경화형 시멘트 복합체(SHCC)는 직접인장 상황에서 FRCCs에 비해 우수한 변형경화 특성을 갖는 재료이다. 하지만 SHCC는 일반적인 콘크리트에 비해서 시멘트비율이 높은 부배합 이며, 이에 따라서 자기수축이 큰 특성을 갖는 재료이다. 따라서 시멘트 복합체 내에 팽창재를 대체함으로써 수축저감을 통한 성능향상을 기대하였다. 이 연구에서는 각 강도별 SHCC의 배합에 팽창재를 대체함에 따른 역학적특성을 평가하고자 하였다. 시험결과 설계기준 압축강도 70MPa 배합이 압축, 인장, 휨, 시험에서 우수한 역학적 특성을 나타내었으며, 균열 특성에서는 팽창재를 대체한 SHCC가 균열분산 및 연성에서 우수한 특성을 나타내었다.

액체 밀도계 및 pH meter기를 이용한 감수제의 신속품질평가 가능성 분석 (Analysis of the Possibility of Rapid Quality Appraisal of Water-Reducing Agents Using the Liquid Densimeter and pH Meter)

  • 김민상;현승용;백철;조만기;한민철;한천구
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2017년도 춘계 학술논문 발표대회
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    • pp.210-211
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    • 2017
  • According to KS F 2560, water-reducing agents used when mixing concrete are to undergo quality evaluation testing slump, air contents, setting time, etc., when delivered from the admixture factory to the ready mixed concrete site. Yet in actual acceptance testing this could be substituted by the score report of the admixture company, in which a possibility of low reliability lies. Therefore this study sought to analyze whether by artificially changing the solid content rate of lignin- and naphthalene-based water-reducing agents and using a liquid densimeter evaluate the quality of the admixture. The results showed that the Type B liquid densimeter was most appropriate and 50cc the most appropriate capacity for the mass cylinder. Also, judging from the changes in density and pH according to the changes in solid content rate, it concludes that a rapid appraisal of the quality of lignin- and naphthalene-based water-reducing agents would be possible using a Type B liquid densimeter.

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조강시멘트를 사용한 초조강 모르타르 개발에 관한 연구 (Study on the Development of Super-High-Early-Strength Mortar Using the Hardening catalyst and High early strength cement)

  • 조인성;허연옥;민태범;이한승
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2012년도 추계 학술논문 발표대회
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    • pp.217-219
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    • 2012
  • In this study, the experiment was conducted in the level of mortar as one of the basic studies on pre-cast concrete which acceleration curing is not done. This study has the purpose to develop the strength of mortar into 20MPa within 6 hours in the condition of room temperature using admixtures which can accelerate C3S hydration reaction. In this experiment, W/C was fixed into 20%, PCE which can stimulate C3S was used as an accelerating admixture. From the results of this experiment, maximum content of accelerating admixture was 1%. Also, as more than 20MPa was measured through 6-hour compressive strength, it can be known that strength can be developed without steam-curing.

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팽창재를 포함한 시멘트 모르터의 팽창 요인 (Expansion Factors of Cement Mortar Containing Expanding Admixture)

  • 황인동;염희남;정윤중
    • 한국세라믹학회지
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    • 제37권6호
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    • pp.576-582
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    • 2000
  • Two type of expanding cement generally referred to as CSA with Hauyne(3CaO 3Al2O3 CaSO4) and Quick lime(CaO). Hauyne is formed to ettringite when there are presented with CaO and CaSO4, and CaO reacts wtih water to form Ca(OH)2. REcently, the mechanism of compensation and expand mortar or concrete tend to same and it has been used improving on its shrink property. The volume of cement paste varies with its water content shrink with drying and re-wetting. Concrete and mortar works are required shrinking compensation and expansion properties to reduce of potential crack. The use of expansion cement may improve on its shrinking volume changes. CSA dosages for shrinking compensation limited by cement weight, but obtained difference expansion rate with varied W/C or inorganic admixture. This paper studies expansion rate according to expansion cement dosages, water and inorganic admixtures as Silica fume. Therefor, the expansion factor has to considered before the application.

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콘크리트의 블리딩에 미치는 혼화제의 영향 (Influence of Chemical Admixture on Bleeding of Concrete)

  • 김은호;황인성;손유신;김규용;한천구
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2003년도 봄 학술발표회 논문집
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    • pp.339-342
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    • 2003
  • This study is intended to investigate the influence of chemical admixture on bleeding of concrete. According to the results, the amount of bleeding with elapse of time does not make much difference in the case of naphthalene type water reducing agent(RN), Naphthalene type high performance water reducing agent(HN) and Melamine type high performance water reducing agent(HM), but it is largest in the case of Polycarbonic acid type high performance water reducing agent(HP). Bleeding speed also is highest in the case of HP in comparison with other chemical admixture. This prove that high performance water reducing agent like HP has little effect on fluidity of concrete, but influences the amount of bleeding more greatly, instead. As properties of hardened concrete, compressive strength makes no difference in the case of RN, HN and HM, but on the other hand, it increases in the case of HP due to a decrease of air content and the large amount of bleeding.

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수축저감제를 사용한 콘크리트의 물성변화 및 건조수축 저감 특성 (Physical Properties and Drying Shrinkage of Concrete Using Shrinkage Reducing Admixtures)

  • 한천구;송승헌
    • 한국건축시공학회지
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    • 제5권3호
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    • pp.101-107
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    • 2005
  • This paper reports the contribution of Shrinkage reducing admixture(SRA) to the physical properties and drying shrinkage of concrete. Dosage of SRA is varied with. For the properties of fresh concrete, an increase in SRA dosage results in a decrease in fluidity and air content, while setting time is accelerated. For the properties of hardened concrete, the incorporation of mineral admixture leads to a decrease in compressive strength at early age, whereas after 28 days, the incorporation of fly ash(FA) and blast furnace slag(BS) has greater compressive strength than conventional concrete without admixture. The use of SRA results in a decrease in compressive strength. The incorporation of SRA with every $1\%$ increase causes the decrease of compressive strength by as much as $3\~6\%$. For drying shrinkage properties, the incorporation of FA and BS reduces drying shrinkage slightly. The use of SRA also decreases drying shrinkage. Every $1\%$ of increase in SRA dosage can reduce drying shrinkage by as much as $10\~15\%$

굵은골재 체적에 따른 고유동콘크리트의 유동특성에 관한 실험적 연구 (The Experience Study on the Floating Properties of High Flow Concrete on volum of Coarse Aggregate used Admixture)

  • 최성우;김호수;백철우;반성수;류득현
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 추계 학술발표회 제16권2호
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    • pp.751-754
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    • 2004
  • There are many factors that affect on the flowing properties of high flowing concrete(HFC), which are fluidity, compactibility, non-segregation ability and fillingability. And because the aggregate which is one of the factors occupies high volume in concrete, it has a much effect on the properties of high flowing concrete according to its size, quality and quantity etc. This is an experimental study to analyze the effect of admixture and volume of coarse aggregate in concrete on the flowing properties of high flowing concrete. For this purpose, the kinds of admixture are fly-ash and blast furnace slag. Also volume of coarse aggregate in concrete are 280, 290, 300, 310, 320 $(\ell/m^3)$. The test of flowablity properties is slump-flow, Air content, V-lot, L-Flow. According to test results, it was found that the compactibility of HFC is more superior to use blast furnace slag than other, and according .to kind of admixture, most compatible volume of coarse are different. Also when used blast furnace slag, the volume of coarse are increased than used fly-ash.

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보강 혼합토의 역학적 특성(I) -시멘트 혼합토- (Mechanical Characteristics of Reinforced Soil(I) -Cement Reinforced Soil-)

  • 송창섭;임성윤
    • 한국환경복원기술학회지
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    • 제5권6호
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    • pp.9-13
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    • 2002
  • This study has been performed to investigate the physical and mechanical characteristics of compaction, volume change and compressive strength for reinforced soil mixed with cement. And confirm the reinforcing effects with admixture such as cement. To this end, a series of compaction test and compression test was conducted for clayey soil(CL) and cement reinforced soil. In order to determine proper moisture content and mixing ratio, pilot test was carried out for soil and cement reinforced soil. And the mixing ratio of cement admixture was fixed 3%, 6%, 9% and 12% by the weight of dry soil. As the experimental results, the maximum dry unit weight(${\gamma}_{dmax}$) was increased with the mixing ratio and then shown the peak at 10% reinforced soil, but the optimum moisture content(OMC) and the volume change was decreased with the ratio increase. And the compressive strength volume change was decreased with mixing ratio increased.